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1.
Constant mode ambient mass spectrometry imaging (MSI) of tissue sections with high lateral resolution of better than 10 μm was performed by combining shear force microscopy with nanospray desorption electrospray ionization (nano-DESI). Shear force microscopy enabled precise control of the distance between the sample and nano-DESI probe during MSI experiments and provided information on sample topography. Proof-of-concept experiments were performed using lung and brain tissue sections representing spongy and dense tissues, respectively. Topography images obtained using shear force microscopy were comparable to the results obtained using contact profilometry over the same region of the tissue section. Variations in tissue height were found to be dependent on the tissue type and were in the range of 0–5 μm for lung tissue and 0–3 μm for brain tissue sections. Ion images of phospholipids obtained in this study are in good agreement with literature data. Normalization of nano-DESI MSI images to the signal of the internal standard added to the extraction solvent allowed us to construct high-resolution ion images free of matrix effects.
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2.
Amphiphilic lipids and hydrophobic proteins are vaporized at atmospheric pressure using nonresonant 70 femtosecond (fs) laser pulses followed by electrospray post-ionization prior to being transferred into a time-of-flight mass spectrometer for mass analysis. Measurements of molecules on metal and transparent dielectric surfaces indicate that vaporization occurs through a nonthermal mechanism. The molecules analyzed include the lipids 1-monooleoyl-rac-glycerol, 1,2-dihexanoyl-sn-glycero-3-phosphocholine, 1,2-dimyristoyl-sn-glycero-3-phosphocholine, and the hydrophobic proteins gramicidin A, B, and C. Vaporization of lipids from blood and milk are also presented to demonstrate that lipids in complex systems can be transferred intact into the gas phase for mass analysis.  相似文献   

3.
Infrared matrix-assisted laser desorption electrospray ionization (IR-MALDESI) mass spectrometry imaging of biological tissue sections using a layer of deposited ice as an energy-absorbing matrix was investigated. Dynamics of plume ablation were first explored using a nanosecond exposure shadowgraphy system designed to simultaneously collect pictures of the plume with a camera and collect the Fourier transform ion cyclotron resonance FT-ICR mass spectrum corresponding to that same ablation event. Ablation of fresh tissue analyzed with and without using ice as a matrix were compared using this technique. Effect of spot-to-spot distance, number of laser shots per pixel, and tissue condition (matrix) on ion abundance were also investigated for 50 μm-thick tissue sections. Finally, the statistical method called design of experiments was used to compare source parameters and determine the optimal conditions for IR-MALDESI of tissue sections using deposited ice as a matrix. With a better understanding of the fundamentals of ablation dynamics and a systematic approach to explore the experimental space, it was possible to improve ion abundance by nearly one order of magnitude.
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4.
Nanospray desorption electrospray ionization (nano-DESI) is one of the ambient desorption ionization methods for mass spectrometry (MS), and it utilizes a steady-state liquid junction formed between two microcapillaries to directly extract analytes from sample surfaces with minimal sample damage. In this study, we employed nano-DESI MS to perform a metabolite fingerprinting analysis directly from a Hypericum leaf surface. Moreover, we investigated whether changes in metabolite fingerprints with time can be related to metabolite distribution according to depth. From a raw Hypericum leaf, the mass spectral fingerprints of key metabolites, including flavonoids and prenylated phloroglucinols, were successfully obtained using ethanol as a nano-DESI solvent, and the changes in their intensities were observed with time via full mass scan experiments. In addition, the differential extraction patterns of the obtained mass spectral fingerprints were clearly visualized over time through selected ion monitoring and pseudo-selected reaction monitoring experiments. To examine the correlation between the time-dependent changes in the metabolite fingerprints and depth-wise metabolite distribution, we performed a nano-DESI MS analysis against leaves whose surface layers were removed multiple times by forming polymeric gum Arabic films on their surfaces, followed by detaching. The preliminary results showed that the changes in the metabolite fingerprints according to the number of peelings showed a similar pattern with those obtained from the raw leaves over time.  相似文献   

5.
A procedure for the isotopic analysis of 28Si-enriched silicon by laser mass spectrometry is described. The procedure is based on the analysis of a dry concentrate or a film obtained by the pneumatic nebulization of an analyte and an internal standard solution or by the laser sputtering of a solid phase onto a support of a high-purity substance. The range of determinable isotope concentrations is (100–n× 10–6) at %; the total error in determining the major isotope is n× 10–2at % at an enrichment factor higher than 99%. The procedure provides the simultaneous control of 70 impurity elements in the sample.  相似文献   

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7.
《Analytical letters》2012,45(2):290-307
Abstract

Distinguishing chemicals and improvement on analytical methods has a direct impact on modern chemical analysis. In this work, the dissociative ionization of xylene isomers was investigated using a femtosecond laser mass spectrometry (FLMS) method with a custom-built linear time-of-flight (TOF) instrument. Laser beams at 800?nm and 400?nm were used and intensity-dependent analysis of the obtained mass spectra was performed using principal component analysis (PCA) to distinguish the xylene isomers, which give identical mass spectra in appearance that cannot be distinguished using normal mass spectrometry methods. The results show that there is a statistically highly significant difference between the xylene isomers for two principal components (1 ? α?>?99.99%) and minimal information loss (<5%) took place during the PCA procedure. Also, the use of the k-medoid clustering method showed that the isomers may be distinguished in real-time for a wide range of ionization laser pulse powers with approximately 99% accuracy. The results suggest that real-time isomer analysis by the FLMS method is suitable for mass spectral identification applications. The FLMS method has been shown to be an important alternative to other mass spectrometric methods that use different ionization mechanisms.  相似文献   

8.
以添加镇静催眠候选新药N6-羟苄腺嘌呤核苷[N6-(4-hydroxybenzyl)adenine riboside,NHBA]的组织匀浆切片作为考察对象,对空气动力辅助离子化质谱成像系统(Air Flow Assisted Ionization Mass Spectrometry Imaging,AFAI-MSI)的关键参数进行考察与优化,以保证最佳条件进行样品检测。在此基础上,对预处理的整体大鼠组织切片进行平行的连续两次质谱成像分析,考察了其内源性代谢物在成像分析过程中是否发生变化。通过对采集数据中关键质谱峰的筛选等处理步骤,并采用可视化的主成分分析(PCA)方法,开展了组织样品内源性代谢物的稳定性分析,最终验证了采用该样品前处理和质谱成像方法,能够保证组织切片样品中内源性代谢物的稳定性,为质谱成像分析结果提供了可靠依据。  相似文献   

9.
An alternative secondary ion mass spectrometry utilizing laser preionization is introduced. The native Ag sample surface is first irradiated with laser pulse (100 fs duration, 10(10)-10(11) W/cm(2) intensity, 1240 nm wavelength) and subsequently bombarded with primary ions (Bi(3)(+), 10 ns duration, 25 keV energy). Multiple correlation patterns are observed in the mass spectra, confirming the mutual laser-secondary ion mass spectrometry (SIMS) interplay in the preionization mechanism. The Ag(+), C(3)H(5)(+), C(3)H(5)O(3)(+), and AgOH(+), C(4)H(5)O(4)(+) are observed with the shallow and steep increasing of intensities at 1.3?×?10(11) W/cm(2) and 1.5?×?10(11) W/cm(2), respectively. Two ionization mechanisms are identified, the ion sputtering regime for intensities of less than 1.4?×?10(11) W/cm(2) and the multiphoton ionization at higher intensities. The Ag saturation intensity obtained from fitting is 2.4?×?10(13) W/cm(2), close to the one reported for postionization. The proposed preionization approach might eliminate the need for high peak power/high intensity laser source and, moreover, the experiment geometry ensures that large areas of the sample are affected by the laser beam.  相似文献   

10.
Structural isomers and enantiomers of hexachlorocyclohexane (HCH) were separated using a chiral column by gas chromatography and quantitatively determined by multiphoton ionization mass spectrometry using an ultraviolet femtosecond laser (200 and 267 nm) as the ionization source. The order of elution of the enantiomers (i.e., (+)-α-HCH and (-)-α-HCH) was predicted from stabilization energies calculated for the complexes using permethylated γ-cyclodextrin as the stationary phase of the column, and the results were compared with the experimental data. The molecular ions observed for HCH were weak, even though they can be ionized through a process of resonance enhanced two-photon ionization at 200 nm. This unfavorable result can be attributed to the dissociation of the molecular ion, as predicted from quantum chemical calculations.
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11.
Matrix-assisted laser desorption/ionization coupled with time-of-flight mass spectrometry (MALDI/TOF-MS) was used for the analysis of low-molecular phosphate compounds found in Hanford tank wastes. The mass spectra of these compounds indicate protonated peaks as well as sodium adducts. Analytical methods presently utilized for the analysis of the phosphate-related organics are both time consuming and labor intensive. A promising alternative is MALDI/TOFMS. The MALDI process produces both positive and negative ions directly and very little sample is required. In addition, there is limited sample preparation and minimal hazardous waste production.  相似文献   

12.
本文采用两套离子透镜作为离子传输系统, 发展了一种新型的激光溅射飞行时间质谱. 在优化的实验条件下对不锈钢中的各种金属元素(包括27Al, 40Ca等)都具有比较接近的灵敏度, 可用于不锈钢的无标样半定量分析.  相似文献   

13.
Teeth retain different elements at particular stages of life. Hence, the exposure over a selected time span may be characterized by laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS). A Nd:YAG laser with emission at 266?nm was coupled to a quadrupole ICP-MS for the quantitative study of historical human teeth for Sr and Ba, elements of anthropological significance. A calibration approach incorporating the experimentally derived k coefficient is reported. The coefficients were established based on the mean concentrations of the analytes determined by pneumatic nebulization ICP-MS using acid-digested calcium phosphate standards and the intensities recorded during laser ablation of corresponding standards as pellets. The k values were 0.54?±?0.05 (µg?g?1)?1 and 4.49?±?1.09 (µg?g?1)?1 for Sr and Ba, respectively. This calibration approach provided local quantitative data and demonstrated statistically significant differences in Sr concentrations in enamel and dentine.  相似文献   

14.
15.
电喷雾内部萃取电离质谱直接分析蒜瓣组织的研究   总被引:2,自引:0,他引:2  
张华  朱亮  陈焕文 《分析化学》2014,(11):1634-1639
固态复杂基体样品的直接电离一般仅发生在样品浅层表面,对固体内部深层物质的质谱分析往往需将样品破碎后才能进行。本研究以蒜瓣样品为例,无需样品预处理,带电的甲醇溶液以2μL/min持续流经蒜瓣深层组织,内部组织中的化学物质选择性地溶解到流动液中,并在蒜瓣组织的尖端形成电喷雾,产生相应气态离子供后续质谱分析。在正离子检测模式下,实验记录了两种蒜瓣样品(共24个)、经不同方式贮存加工后的同种蒜瓣样品(共36个)在m/z 50~2000范围内的化学指纹谱图,并将指纹谱图数据进行主成分分析( PCA),获得了令人满意的分组结果。研究表明,电喷雾内部萃取电离质谱( iEESI-MS)可以直接获取蒜瓣内部组织生物化学信息,鉴定蒜瓣组织中重要的化学成分(如蒜氨酸、蒜素、精氨酸、多糖等),快速识别蒜瓣组织中代谢组分的变化。本方法无需样品预处理、操作简单、分析速度快(单个样品分析时间小于2 min),最大程度避免了生物组织分析过程中活性物质受环境作用(如酸解、空气氧化等)的降解,有望为生物组织样品的代谢组学研究提供一种直接、快速的质谱分析方法。  相似文献   

16.
敞开式电离质谱(Ambient ionization mass spectrometry,AIMS)是指在大气压环境下,无需或只需简单的样品前处理即可对样品中目标物进行分析的质谱技术.AIMS具有简单、快速、无损和适用范围广等优势,被广泛应用于法医毒物分析领域.该文对敞开式电离(Ambient ionization,A...  相似文献   

17.
Doklady Physical Chemistry - Vaporization of GeO2 (tetragonal and hexagonal) have been studied by the Knudsen effusion method in combination with mass spectrometry in the temperature range...  相似文献   

18.
19.
Achieving and maintaining high mass measurement accuracy (MMA) throughout a mass spectrometry imaging (MSI) experiment is vital to the identification of the observed ions. However, when using FTMS instruments, fluctuations in the total ion abundance at each pixel due to inherent biological variation in the tissue section can introduce space charge effects that systematically shift the observed mass. Herein we apply a recalibration based on the observed cyclotron frequency shift of ions found in the ambient laboratory environment, polydimethylcyclosiloxanes (PDMS). This calibration method is capable of achieving part per billion (ppb) mass accuracy with relatively high precision for an infrared matrix-assisted laser desorption electrospray ionization (IR-MALDESI) MSI dataset. Comparisons with previously published mass calibration approaches are also presented.
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20.
选择肺癌组织等多种生物组织为代表性样品,在正离子检测模式下,以磷脂类物质丰度、信号强度高为目标,考察了21种不同组成的CH3OH/H2O溶剂体系,获得了最佳溶剂(CH3OH-H2O,30∶70, V/V),建立了一种无需破坏、研磨即可获取组织内部样品中磷脂类物质信号的内部萃取电喷雾电离质谱( iEESI-MS)方法,并成功应用于肺癌、食管癌、猪肉、牛肉、猪肺、猪心等不同生物组织样品中磷脂类物质的直接质谱分析。本方法无需样品预处理,可通过选择合适的萃取溶剂来提高方法的分析灵敏度和选择性,单个样品的平均分析时间少于1 min,样品耗量少,有望为生物组织样品中磷脂类物质的研究提供一种质谱学新方法。  相似文献   

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